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1Academic Journal
المؤلفون: Santos, Lucas, Behrens, Luiza, Barbosa, Camila, Tiefensee-Ribeiro, Camila, Rosa-Silva, Helen, Somensi, Nauana, Brum, Pedro Ozorio, Silveira, Alexandre Kleber, Rodrigues, Matheus Scarpatto, de Oliveira, Jade, Gelain, Daniel Pens, Almeida, Roberto F, Moreira, José Cláudio Fonseca
المصدر: Molecular Neurobiology; Aug2024, Vol. 61 Issue 8, p5718-5737, 20p
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2Academic Journal
المؤلفون: Brum, Pedro Ozorio, Viola, Guilherme Danielski, Saibro-Girardi, Carolina, Tiefensee-Ribeiro, Camila, Brum, Matheus Ozorio, Gasparotto, Juciano, Krolow, Rachel, Moreira, José Cláudio Fonseca, Gelain, Daniel Pens
المساهمون: Conselho Nacional de Desenvolvimento Científico e Tecnológico, Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Pró-Reitoria de Pesquisa, Universidade Federal do Rio Grande do Sul, University of Vienna
المصدر: Neurochemical Research ; volume 47, issue 2, page 409-421 ; ISSN 0364-3190 1573-6903
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3Academic Journal
المؤلفون: Tiefensee Ribeiro, Camila, Peixoto, Daniel Oppermann, Santos, Lucas, Saibro-Girardi, Carolina, Brum, Pedro Ozorio, Carazza-Kessler, Flávio Gabriel, Somensi, Nauana, Behrens, Luiza Marques Prates, Bittencourt, Reykla Ramon, Soares, Laíssa Santos, Silveira, Alexandre Kleber, de Oliveira, Jade, Moreira, José Cláudio Fonseca, Gasparotto, Juciano, Gelain, Daniel Pens
المساهمون: Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul, Conselho Nacional de Desenvolvimento Científico e Tecnológico
المصدر: Brain, Behavior, & Immunity - Health ; volume 14, page 100253 ; ISSN 2666-3546
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4Academic Journal
المؤلفون: Michels, Monique, Rocha Abatti, Mariane, Avila, Pricila, Vieira, Andriele, Borges, Heloisa, Carvalho Junior, Celso, Wendhausen, Diogo, Gasparotto, Juciano, Tiefensee Ribeiro, Camila, Moreira, José Cláudio Fonseca, Pens Gelain, Daniel, Dal‐Pizzol, Felipe
مصطلحات موضوعية: M1/M2, Microglia, Inflammation, Microglial polarization, Phenotypes, Sepsis
وصف الملف: application/pdf
Relation: https://doi.org/10.1111/jcmm.14606; 1. Deng YY, Fang M, Zhu GF, et al. Role of microglia in the pathogen-esis of sepsis-associated encephalopathy. CNS Neurol Disord Drug Targets.2013;12:720‐725. 2. Michels M, Danielski LG, Dal-Pizzol F, et al. Neuroinflammation: microglial activation during sepsis. Curr Neurovasc Res. 2014;11:262-270. 3. Michels M, Vieira AS, Vuolo F, et al. The role of microglia activation in the development of sepsis-induced long-term cognitive impair-ment. Brain Behav Immun.2015;43:54‐59. 4. Michels M, Danieslki LG, Vieira A, et al. CD40-CD40 ligand path-way is a major component of acute neuroinflammation and con-tributes to long-term cognitive dysfunction after sepsis. Mol Med. 2015;26(21):219‐226. 5. Moraes CA, Santos G, Spohr TCLdSe, et al. Activated microglia‐in-duced deficits in excitatory synapses through IL- 1β: implications for cognitive impairment in sepsis. Mol Neurobiol. 2015;52(1):653‐663. 6. Hoogland ICM, Houbolt C, van Westerloo DJ, van Gool WA, van de Beek D. Systemic inflammation and microglial activation: systematic review of animal experiments. J. Neuroinflammation. 2015;12:114. 7. Sandiego CM, Gallezot JD, Pittman B, et al. Imaging robust microg-lial activation after lipopolysaccharide administration in humans with PET. Proc Natl Acad Sci U S A. 2015;112(40):12468‐12473. 8. Hanisch UK. Proteins in microglial activation: inputs and outputs by subsets. Curr Protein Pep Sci. 2013;14:3‐15. 9. Kettenmann H, Hanisch U-K, Noda M, Verkhratsky A. Physiology of microglia. Physiol Rev. 2011;91:461‐553. 10. Ransohoff RM. A polarizing question: do M1 and M2 microglia exist Nat Neurosci. 2016;19:987-991. 11. Ekdahl CT, Claasen JH, Bonde S, et al. Inflammation is detri-mental for neurogenesis in adult brain. Proc Natl Acad Sci U S A. 2003;100(23):13632-13637. 12. Butovsky O, Ziv Y, Schwartz A, et al. Microglia activated by IL-4 or IFN-γ differentially induce neurogenesis and oligodendrogenesis from adult stem/progenitor cells. Mol Cell Neurosci. 2006;31:149-160. 13. Roughton K, Andreasson U, Blomgren K, Kalm M. Lipopolysaccharide-induced inflammation aggravates irradiation-induced injury to the young mouse brain. Dev Neurosci. 2013;35:406‐415. 14. Nikolakopoulou AM, Dutta R, Chen Z, et al. Activated microglia en-hance neurogenesis via trypsinogen secretion. Proc Natl Acad Sci U S A. 2013;110:8714-8719. 15. Pang T, Wang J, Benicky J, et al. Minocycline ameliorates LPS‐in-duced inflammation in human monocytes by novel mechanisms in-cluding LOX-1, Nur77 and LITAF inhibition. Biochim Biophys Acta. 2012;1820:503‐510. 16. Fink MP, Heard SO. Laboratory models of sepsis and septic shock. J Surg Res. 1990;49:186-196. 17. Schwalm MT, Pasquali M, Miguel SP, et al. Acute brain inflamma-tion and oxidative damage are related to long-term cognitive defi-cits and markers of neurodegeneration in sepsis-survivor rats. Mol Neurobiol. 2014;49(1):380‐385. 18. Biff D, Petronilho F, Constantino L, et al. Correlation of acute phase inflammatory and oxidative markers with long-term cognitive im-pairment in sepsis survivors rats. Shock. 2013;40:45‐48. 19. Comim CM, Cassol-Jr OJ, Constantino LS, et al. Alterations in in-flammatory mediators, oxidative stress parameters and energetic metabolism in the brain of sepsis survivor rats. Neurochem Res. 2011;36(2):304-311. 20. Miranda KM, Espey MG, Wink DA. A rapid, simple spectrophoto-metric method for simultaneous detection of nitrate and nitrite. Nitric Oxide. 2001;5:62‐71. 21. d’Avila JC, Siqueira LD, Mazeraud A, et al. Age-related cognitive im-pairment is associated with long-term neuroinflammation and oxi-dative stress in a mouse model of episodic systemic inflammation. J Neuroinflammation. 2018;15(1):28. 22. Michels M, Ávila P, Pescador B, et al. Microglial cells depletion increases inflammation and modifies microglial phenotypes in an animal model of severe sepsis. Mol Neurobiol. 2019. https://doi.org/10.1007/s12035‐019‐1606‐2 23. Zrzavy T, Höftberger R, Berger T, et al. Pro-inflammatory activation of microglia in the brain of patients with sepsis. Neuropathol Appl Neurobiol. 2019;45(3):278‐290. 24. Martinez FO, Sica A, Mantovani A, et al. Macrophage activation and polarization. Front Biosci. 2018;13:453‐461. 25. Munder M, Eichmann K, Moran JM, et al. Th1/Th2‐regulated ex-pression of arginase isoforms in murine macrophages and dendritic cells. J Immunol. 1999;163:3771-3777. 26. Zhang W, Narayanan M, Friedlander RM. Additive neuroprotective effects of minocycline with creatine in a mouse model of ALS. Ann Neurol. 2003;53:267‐270. 27. Barichello T, Machado RA, Constantino L, et al. Antioxidant treat-ment prevented late memory impairment in an animal model of sep-sis. Crit Care Med. 2007;35(9):2186‐2190. 28. Mantovani A, Germano G, Marchesi F, et al. Cancer-promoting tumor-associated macrophages: new vistas and open questions. Eur J Immunol.2011;41:2522‐2525. 29. Zhao Q, Xie X, Fan Y, et al. Phenotypic dysregulation of microglial activation in young offspring rats with maternal sleep deprivation-induced cognitive impairment. Sci Rep. 2015;5:9513. 30. Hoeger S, Bergstraesser C, Selhorst J, et al. Modulation of brain dead induced inflammation by vagus nerve stimulation. Am J Transplant. 2010;10(3):477-489. 31. Schweighöfer H, Rummel C, Roth J, et al. Modulatory effects of vagal stimulation on neurophysiological parameters and the cellu-lar immune response in the rat brain during systemic inflammation. Intensive Care Med Exp. 2016;4(1):19. 32. Hunter CL, Quintero EM, Gilstrap L, Bhat NR, Granholm A-C. Minocycline protects basal forebrain cholinergic neurons from mu p75‐saporin immunotoxic lesioning. Eur J Neurosci. 2004;19(12):3305‐3316. 33. Jeremias IC, Victorino VJ, Barbeiro HV, et al. The role of ace-tylcholine in the inflammatory response in animals surviving sepsis induced by cecal ligation and puncture. Mol Neurobiol. 2016;53(10):6635‐6643. 34. Adembri C, Selmi V, Vitali L, et al. Minocycline but not tigecycline is neuroprotective and reduces the neuroinflammatory response in-duced by the superimposition of sepsis upon traumatic brain injury. Crit Care Med. 2014;42(8):e570‐e582. 35. Hoshino K, Hayakawa M, Morimoto Y. Minocycline prevents the impairment of hippocampal long-term potentiation in the septic mouse. Shock. 2017;48(2):209-214. 36. Michels M, Steckert AV, Quevedo J, Barichello T, Dal-Pizzol F. Mechanisms of long-term cognitive dysfunction of sepsis: from blood-borne leukocytes to glial cells. Intensive Care Med Exp. 2015c;3(1):30.; http://hdl.handle.net/11323/5646; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.co/
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5Academic Journal
المؤلفون: Tiefensee Ribeiro, Camila, Gasparotto, Juciano, Petiz, Lyvia Lintzmaier, Brum, Pedro Ozorio, Peixoto, Daniel Oppermann, Kunzler, Alice, da Rosa Silva, Helen Tais, Bortolin, Rafael Calixto, Almeida, Roberto Farina, Quintans-Junior, Lucindo José, Araújo, Adriano Antunes, Moreira, José Claudio Fonseca, Gelain, Daniel Pens
المساهمون: Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq), FAPERGS, Propesq-UFRGS, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
المصدر: Neurochemistry International ; volume 126, page 27-35 ; ISSN 0197-0186
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6Report
المؤلفون: Bittencourt, Aline, Ozorio Brum, Pedro, Tiefensee Ribeiro, Camila, Gasparotto, Juciano, Bortolin, Rafael Calixto, Rodrigues de Vargas, Amanda, Heimfarth, Luana, Farina de Almeida, Roberto, Moreira, José Cláudio Fonseca, de Oliveira, Jade, Pens Gelain, Daniel
المصدر: Nutritional Neuroscience ; https://www.tandfonline.com/doi/ref/10.1080/1028415X.2020.1831261?scroll=top
مصطلحات موضوعية: Obesity, Parkinson’s disease, Tyrosine hydroxylase, Inflammation, Locomotion, Anxiety, Neuroinflammation, High-fat diet
وصف الملف: application/pdf
Relation: Obesity in Aging Exacerbates Blood-Brain Barrier Disruption, Neuroinflammation, and Oxidative Stress in the Mouse Hippocampus: Effects on Expression of Genes Involved in Beta-Amyloid Generation and Alzheimer's Disease; https://hdl.handle.net/11323/7975; https://doi.org/10.1080/1028415X.2020.1831261; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.co/
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7Academic Journal
المؤلفون: Espitia Pérez, Pedro, Albino Marin, Suelen, Espitia Pérez, Lyda, Brango, Hugo, Da Rosa, Helen Tais, Kleber Silveira, Alexandre, Cerveira, Camila, Moraes Pompéu, Diogo, Mingori Rodrigues, Moara, Tiefensee Ribeiro, Camila, Gelain, D. P, Schnorr, Carlos Eduardo, Fonseca Moreira, José Claudio
مصطلحات موضوعية: Behavior, Co-Exposure, Methylmercury, Oxidative stress, Pregnancy, Retinyl palmitate
وصف الملف: application/pdf
Relation: http://hdl.handle.net/11323/933; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.co/
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8Academic Journal
المؤلفون: Tiefensee Ribeiro, Camila, Gasparotto, Juciano, Teixeira, Alexsander Alves, Portela, Luis Valmor Cruz, Flores, Viviane Noll Louzada, Moreira, José Claudio Fonseca, Gelain, Daniel Pens
المساهمون: FAPERGS, CAPES
المصدر: The Journal of Biochemistry ; volume 163, issue 6, page 515-523 ; ISSN 0021-924X 1756-2651
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9Report
المؤلفون: Kunzler, Alice, Tiefensee Ribeiro, Camila, Gasparotto, Juciano, Lintzmaier Petiz, Lyvia, Thais da Rosa Silva, Helen, da Silva Jr., Jeferson Delgado, Bortolin, Rafael, Oliveira de Souza, Priscila, Barreto, Fabiano, Espitia-Perez, Pedro, Schnorr, Carlos Eduardo, Somensi, Nauana, Fonseca Moreira, José Claudio, Pens Gelain, Daniel
مصطلحات موضوعية: Retinol, Neurodegenerative disorder, 6-OHDA, Neuroinflammation, Vitamin supplementation
وصف الملف: application/pdf
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Bhat, S., Acharya, U.R., Hagiwara, Y., Dadmehr, N., Adeli, H., 2018. Parkinson's disease: cause factors, measurable indicators, and early diagnosis. Comput. Biol. Med. 102, 234–241. Bradford, M.M., 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72, 248–254. Burton, G.W., Ingold, K.U., 1984. beta-Carotene: an unusual type of lipid antioxidant. Science 224, 569–573. Chang, K.H., Cheng, M.L., Chiang, M.C., Chen, C.M., 2018. Lipophilic antioxidants in neurodegenerative diseases. Clin. Chim. Acta 485, 79–87. Dao, D.Q., Ngo, T.C., Thong, N.M., Nam, P.C., 2017. Is vitamin A an antioxidant or a prooxidant? J. Phys. Chem. B 121, 9348–9357. de Bittencourt Pasquali, M.A., Roberto de Oliveira, M., De Bastiani, M.A., da Rocha, R.F., Schnorr, C.E., Gasparotto, J., Gelain, D.P., Moreira, J.C., 2012. L-NAME co-treatment prevent oxidative damage in the lung of adult Wistar rats treated with vitamin A supplementation. Cell Biochem. Funct. 30, 256–263. De Oliveira, M.R., Moreira, J.C., 2008. Impaired redox state and respiratory chain enzyme activities in the cerebellum of vitamin A-treated rats. Toxicology 253, 125–130. de Oliveira, M.R., Silvestrin, R.B., Mello e Souza, T., Moreira, J.C., 2008. Therapeutic vitamin A doses increase the levels of markers of oxidative insult in substantia nigra and decrease locomotory and exploratory activity in rats after acute and chronic supplementation. Neurochem. Res. 33, 378–383. de Oliveira, M.R., Soares Oliveira, M.W., Muller Hoff, M.L., Behr, G.A., da Rocha, R.F., Fonseca Moreira, J.C., 2009. Evaluation of redox and bioenergetics states in the liver of vitamin A-treated rats. Eur. J. Pharmacol. 610, 99–105. de Pee, S., Dary, O., 2002. Biochemical indicators of vitamin A deficiency: serum retinol and serum retinol binding protein. J. Nutr. 132, 2895s–2901s. Draper, H.H., Hadley, M., 1990. Malondialdehyde determination as index of lipid peroxidation. Methods Enzymol. 186, 421–431. Dunkley, P.R., Bobrovskaya, L., Graham, M.E., von Nagy-Felsobuki, E.I., Dickson, P.W., 2004. Tyrosine hydroxylase phosphorylation: regulation and consequences. J. Neurochem. 91, 1025–1043. Ellman, G.L., 1959. Tissue sulfhydryl groups. Arch. Biochem. Biophys. 82, 70–77. Espitia-Perez, P., Albino, S.M., da Rosa, H.T., Silveira, A.K., Espitia-Perez, L., Brango, H., Moraes, D.P., Hermann, P.R.S., Mingori, M., Barreto, F., Kunzler, A., Gelain, D.P., Schnorr, C.E., Moreira, J.C.F., 2018. Effects of methylmercury and retinol palmitate co-administration in rats during pregnancy and breastfeeding: metabolic and redox parameters in dams and their offspring. Ecotoxicol. Environ. Saf. 162, 603–615. Gasparotto, J., Ribeiro, C.T., Bortolin, R.C., Somensi, N., Rabelo, T.K., Kunzler, A., Souza, N.C., Pasquali, M.A.B., Moreira, J.C.F., Gelain, D.P., 2017. 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Real, C.C., Garcia, P.C., Britto, L.R.G., 2017. Treadmill exercise prevents increase of neuroinflammation markers involved in the dopaminergic damage of the 6-OHDA Parkinson's disease model. J. Mol. Neurosci. 63, 36–49. Rodriguez-Pallares, J., Parga, J.A., Munoz, A., Rey, P., Guerra, M.J., Labandeira-Garcia, J.L., 2007. Mechanism of 6-hydroxydopamine neurotoxicity: the role of NADPH oxidase and microglial activation in 6-hydroxydopamine-induced degeneration of dopaminergic neurons. J. Neurochem. 103, 145–156. Sardi, S.P., Cedarbaum, J.M., Brundin, P., 2018. Targeted therapies for Parkinson's disease: from genetics to the clinic. Mov. Disord. 33, 684–696. Schnorr, C.E., Bittencourt Lda, S., Petiz, L.L., Gelain, D.P., Zeidan-Chulia, F., Moreira, J.C., 2015. Chronic retinyl palmitate supplementation to middle-aged Wistar rats disrupts the brain redox homeostasis and induces changes in emotional behavior. Mol. Nutr. Food Res. 59, 979–990. Schnorr, C.E., da Silva Morrone, M., Simoes-Pires, A., da Rocha, R.F., Behr, G.A., Moreira, J.C., 2011. Vitamin A supplementation in rats under pregnancy and nursing induces behavioral changes and oxidative stress upon striatum and hippocampus of dams and their offspring. Brain Res. 1369, 60–73. Shearer, K.D., Stoney, P.N., Morgan, P.J., McCaffery, P.J., 2012. A vitamin for the brain. Trends Neurosci. 35, 733–741. Shi, H.Y., Yan, S.M., Guo, Y.M., Zhang, B.Q., Guo, X.Y., Shi, B.L., 2018. Vitamin A pretreatment protects NO-induced bovine mammary epithelial cells from oxidative stress by modulating Nrf 2 and NF-kappaB signaling pathways. J. Anim. Sci. 96, 1305–1316. Singh, P., Hanson, P.S., Morris, C.M., 2017. SIRT1 ameliorates oxidative stress induced neural cell death and is down-regulated in Parkinson's disease. 18, 46. Tanumihardjo, S.A., Russell, R.M., Stephensen, C.B., Gannon, B.M., 2016. Biomarkers of Nutrition for Development (BOND)-Vitamin A Review, vol. 146. pp. 1816s–1848s. Taylor, J.M., Main, B.S., Crack, P.J., 2013. Neuroinflammation and oxidative stress: coconspirators in the pathology of Parkinson's disease. Neurochem. Int. 62, 803–819. Theus, M.H., Sparks, J.B., Liao, X., Ren, J., Luo, X.M., 2017. All- trans-retinoic acid augments the histopathological outcome of neuroinflammation and neurodegeneration in lupus-prone MRL/lpr mice. J. Histochem. Cytochem. 65, 69–81. Thiele, S.L., Warre, R., Nash, J.E., 2012. Development of a unilaterally-lesioned 6-OHDA mouse model of Parkinson's disease. J. Vis. Exp. 60 pii: 3234. Trumbo, P., Yates, A.A., Schlicker, S., Poos, M., 2001. Dietary reference intakes: vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc. J. Am. Diet Assoc. 101, 294–301. Ulusoy, G.K., Celik, T., Kayir, H., Gursoy, M., Isik, A.T., Uzbay, T.I., 2011. Effects of pioglitazone and retinoic acid in a rotenone model of Parkinson's disease. Brain Res. Bull. 85, 380–384. Wang, H.L., Zhang, Z., Hintze, M., Chen, L., 2011. Decrease in calcium concentration triggers neuronal retinoic acid synthesis during homeostatic synaptic plasticity. J. Neurosci. 31, 17764–17771. Wang, Q., Liu, Y., Zhou, J., 2015a. Neuroinflammation in Parkinson's disease and its potential as therapeutic target. Transl. Neurodegener. 4, 19. Wang, Q., Liu, Y., Zhou, J., 2015b. Neuroinflammation in Parkinson's disease and its potential as therapeutic target. Transl. Neurodegener. 4. Xie, L., Chen, L., Gu, P., Wei, L., Kang, X., 2018. A convenient method for extraction and analysis with high-pressure liquid chromatography of catecholamine neurotransmitters and their metabolites. J. Vis. Exp. 133. Yin, L.H., Shen, H., Diaz-Ruiz, O., Backman, C.M., Bae, E., Yu, S.J., Wang, Y., 2012. Early post-treatment with 9-cis retinoic acid reduces neurodegeneration of dopaminergic neurons in a rat model of Parkinson's disease. BMC Neurosci. 13, 120. Zeng, J., Chen, L., Wang, Z., Chen, Q., Fan, Z., Jiang, H., Wu, Y., Ren, L., Chen, J., Li, T., Song, W., 2017. Marginal Vitamin A Deficiency Facilitates Alzheimer's Pathogenesis. 133, 967–982.; http://hdl.handle.net/11323/2861; Corporación Universidad de la Costa; REDICUC - Repositorio CUC; https://repositorio.cuc.edu.co/
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10Academic Journal
المؤلفون: Somensi, Nauana, Lopes, Samantha Cristiane, Gasparotto, Juciano, Mayer Gonçalves, Rosângela, Tiefensee-Ribeiro, Camila, Oppermann Peixoto, Daniel, Ozorio Brum, Pedro, Pinho, Cibele Martins, Agnes, Jonathan Paulo, Santos, Lucas, de Oliveira, Jade, Spiller, Fernando, Fonseca Moreira, José Cláudio, Zanotto-Filho, Alfeu, Prediger, Rui Daniel, Pens Gelain, Daniel
المساهمون: Fundação de Amparo à Pesquisa do Estado do Rio Grande do Sul, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Conselho Nacional de Desenvolvimento Científico e Tecnológico
المصدر: Neurochemistry International ; volume 151, page 105215 ; ISSN 0197-0186
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11Academic Journal
المؤلفون: Brum, Pedro Ozorio, Viola, Guilherme Danielski, Saibro-Girardi, Carolina, Tiefensee-Ribeiro, Camila, Brum, Matheus Ozorio, Gasparotto, Juciano, Krolow, Rachel, Moreira, José Cláudio Fonseca, Gelain, Daniel Pens
المصدر: Neurochemical Research; Feb2022, Vol. 47 Issue 2, p409-421, 13p
مصطلحات موضوعية: CELL differentiation, NEUROBLASTOMA, GENE expression, SYMPATHETIC nervous system, NEURAL crest
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12Academic Journal
المؤلفون: Espitia-Pérez, Pedro, Albino, Suelen Marin, Espitia-Pérez, Lyda, Brango, Hugo, da Rosa, Helen, Kleber Silveira, Alexandre, Moraes, Diogo Pompéu, Cerveira, Camila, Mingori, Moara, Tiefensee Ribeiro, Camila, Gelain, Daniel Pens, Schnorr, Carlos Eduardo, Fonseca Moreira, José Cláudio
المساهمون: Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq), Fundação de Amparo a Pesquisa do Estado do Rio Grande do Sul (FAPERGS) through FAPERGS/CNPq-PRONEX
المصدر: NeuroToxicology ; volume 69, page 164-180 ; ISSN 0161-813X
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13Academic Journal
المؤلفون: Michels, Monique, Abatti, Mariane Rocha, Ávila, Pricila, Vieira, Andriele, Borges, Heloisa, Carvalho Junior, Celso, Wendhausen, Diogo, Gasparotto, Juciano, Tiefensee Ribeiro, Camila, Moreira, José Claudio Fonseca, Gelain, Daniel Pens, Dal‐Pizzol, Felipe
المصدر: Journal of Cellular & Molecular Medicine; Jan2020, Vol. 24 Issue 1, p88-97, 10p
مصطلحات موضوعية: ANIMAL models of inflammation, NEONATAL sepsis, ANIMAL models in research, PHENOTYPES, SEPSIS